Department of Otolaryngology, University of Texas Medical Branch at Galveston, 301 University Boulevard, Galveston, TX 77550-1063, USA.
Brain Res. 2011 Feb 10;1373:25-38. doi: 10.1016/j.brainres.2010.12.016. Epub 2010 Dec 11.
Acetylcholine (ACh) is the major neurotransmitter released from vestibular efferent terminals onto hair cells and afferents. Previous studies indicate that the two classes of acetylcholine receptors, nicotinic (nAChRs) and muscarinic receptors (mAChRs), are expressed by vestibular hair cells (VHCs). To identify if both classes of receptors are present in VHCs, whole cell, voltage-clamp- and current-clamp-patch recordings were performed on isolated pigeon vestibular type I and type II HCs during the application of the cholinergic agonists, acetylcholine and carbachol, and the cholinergic antagonists, D-tubocurarine and atropine. By applying in different combinations, these compounds were used to selectively activate either nAChRs or mAChRs. The effects of nAChR and mAChR activation on HC currents and zero electrode current potential (V(z)) were monitored. It was found that presumed mAChR activation decreased both inward and outward currents in both type I and type II HCs, resulting in either a depolarization or hyperpolarization. Conversely, nAChR activation mainly increased both inward and outward currents in type II HCs, resulting in a hyperpolarization of their V(z). nAChR activation also increased outward currents in type I HCs resulting in either a depolarization or hyperpolarization of their V(z). The decrease of inward and outward currents and the depolarization of the V(z) in type I pigeon HCs by activation of mAChRs represents a new finding. Ion channel candidates in pigeon vestibular HCs that might underlie the modulation of the macroscopic ionic currents and V(z) by different AChR activation are discussed.
乙酰胆碱(ACh)是从前庭传出末梢释放到毛细胞和传入神经的主要神经递质。以前的研究表明,两类乙酰胆碱受体,烟碱型(nAChRs)和毒蕈碱型受体(mAChRs),都存在于前庭毛细胞(VHCs)中。为了确定这两种受体是否都存在于 VHCs 中,在应用胆碱能激动剂乙酰胆碱和卡巴胆碱,以及胆碱能拮抗剂筒箭毒碱和阿托品时,对分离的鸽子前庭 I 型和 II 型 HC 进行了全细胞、电压钳和电流钳膜片钳记录。通过不同的组合应用,这些化合物被用来选择性地激活 nAChRs 或 mAChRs。监测 nAChR 和 mAChR 激活对 HC 电流和零电极电流电位(V(z))的影响。结果发现,假定的 mAChR 激活降低了 I 型和 II 型 HC 中的内向和外向电流,导致去极化或超极化。相反,nAChR 激活主要增加了 II 型 HC 中的内向和外向电流,导致其 V(z)的超极化。nAChR 激活也增加了 I 型 HC 的外向电流,导致其 V(z)去极化或超极化。mAChR 激活导致 I 型鸽子 HC 内向和外向电流减少以及 V(z)去极化,这是一个新的发现。讨论了在不同 AChR 激活下,可能调节鸽子前庭 HC 宏观离子电流和 V(z)的离子通道候选物。